教育經歷
2016.9-2017.8|德國馬克斯-普朗克研究所| 訪問學者
2006.9-2009.6|大連理工大學| 應用化學 | 博士研究生 | 導師:王植源教授、蹇錫高院士
2004.9-2006.6|大連理工大學| 高分子材料 | 碩士研究生 | 導師:蹇錫高院士
2000.9-2004.6|湘潭大學| 高分子材料 | 本科
工作經歷
2012.2-2015.2中南大學資源加工與生物工程學院| 博士后 | 導師:胡岳華教授
2009.10至今中南大學化學化工學院 | 院長助理 副教授
社會兼職
中國化學會會員、美國化學會會員
獲得榮譽
2013年湖南省自然科學優(yōu)秀論文獎、2014年中國博士后論壇最佳學術報告獎
主講課程
有機化學、聚合物研究方法
招生專業(yè)
應用化學
研究方向
多孔有機聚合物催化劑、多孔光電材料、吸附分離功能多孔材料
科研項目
[1]國家自然科學基金重點項目:二氧化碳捕集與轉化一體化納米反應器的構建及其關鍵科學問題
[2]國家自然科學基金面上項目:草怕津基多孔有機聚合物的設計合成、孔結構調控及CO2吸附機制研究
[3]湖南省自然科學株洲市聯合基金重點項目:環(huán)保型絕緣浸漬漆用超支化不飽和聚酯的制備及應用技術
[4]湖南省自然科學青年基金:高吸氫作用力微孔有機聚合物的研究
[5]國家自然科學青年基金:高吸氫吸附焓氮雜環(huán)納米孔有機聚合物的研究
[6]湖南省市聯合基金重點項目:醫(yī)用PVC材料生物安全性增塑技術
[7]湖南省戰(zhàn)略新興產業(yè)項目:大功率牽引電機用聚酰亞胺薄膜關鍵技術研究與開發(fā)
[8]中國博士后基金特別資助:用于高選擇性碳捕獲的微孔聚合物研究
[9]國家自然科學基金面上項目:寬吸收D-π-A型聚合物染料的可控合成與能級調控
論文成果
[1] Shuai Gu, Jianqiao He, Yunlong Zhu, Guipeng Yu*, Chunyue Pan, Jianguo Guan*, and Kai Tao. Facile Carbonization of Microporous Organic Polymers into Hierarchically Porous Carbons Targeted for Effective CO2 Uptake at Low Pressures. ACS Applied Materials & Interfaces, 2016,8: 18383-18392
[2] Yindong Zhang, Yunlong Zhu, Yijun Lin, Jun Guo, Yuanyuan Wang, Guipeng Yu*, Chunyue Pan*. The role of the internal molecular free volume in defining organic porous copolymer properties: tunable porosity and highly selective CO2 adsorption. Physical Chemistry Chemical Physics, 2016, 2016, 18: 11323-11329
[3] Dongyang Chen, Shuai Gu, Yi-Jun Lin, Guipeng Yu, Chunyue Pan, Xigao Jian. Tunable Porosity of nanoporous organic polymers with hierarchically pores for enhanced CO2 capture. Polymer Chemistry, 2016, 7: 3416u20133422
[4] Junling Liu, Yu Fu, Xianbiao Fu, Yuxin Li, Chunyue Pan, Guipeng Yu* and Xuxian Xiao. Nanoscale Porous Triazine-based Frameworks with Cyanate Ester Linkages for Efficient Drug Delivery. RSC Advances, 2016, 6: 20834
[5] Kuanyu Yuan, Cheng Liu, Jianhua Han, Guipeng Yu, Zhonggang Wang, and Xigao Jian. Phthalazinone Structure-Based Covalent Triazine Frameworks and Their Gas Adsorption and Separation Properties. RSC Adv., 2016,6: 12009-12020
[6] Lu Xiang, Yunlong Zhu, Dongyang Chen, Guipeng Yu*, Chunyue Pan*, Yuehua. Hu. A Luminescent Hypercrosslinked Conjugated Microporous Polymer for Efficient Removal and Detection of Mercury Ions. Macromolecular Rapid Communications, 2015,36: 1566-1571
[7] Xian Fu, Yindong Zhang, Guipeng Yu*, Chunyue Pan*, Zhonggang Wang, Xigao Jian, Yuehua Hu. Metal-microporous Aromatic Polymers with Improved Performance for Small Gas Storage. Chemistry - A European Journal, 2015, 21: 13357-63
[8] Gang Wang, Yingying Wu, Wenhui Ding, Guipeng Yu*,Yingping Zou and Chunyue Pan*. Photovoltaic Performance of Long-Chain Poly(triphenylamine-phenothiazine) Dyes with Tunable π-Bridge for Dye-Sensitized Solar Cells. J. Mater. Chem. A, 2015, 3: 14217
[9] Shaofei Wu, Shuai Gu, Aiqing Zhang, Guipeng Yu*, Zhonggang Wang*, Xigao Jian, Chunyue Pan*. A rational construction of microporous imide-bridged covalent-organic polytriazines for high-enthalpy small gas absorption. J. Mater. Chem. A, 2015, 3: 878-885
[10] Qingquan Liu*, Zhe Tang, Minda Wu, Guipeng Yu, Zhihua Zhou*, Xiaojuan Li. Novel ferrocene-based nanoporous organic polymers for clean energy application. RSC Adv., 2015, 5: 8933
[11] Yao Liu, Shaofei Wu, Gang Wang, Guipeng Yu*, Jianguo Guan, Chunyue Pan*, Zhonggang Wang*. Control of porosity of novel carbazole-modified polytriazine frameworks for highly selective separation of CO2-N2. J. Mater. Chem. A, 2014, 2: 7795
[12] Shaohui Xiong, Xian Fu, Lu Xiang, Guipeng Yu*, Jianguo Guan, Zhonggang Wang,* Yong Du, Xiang Xio. Liquid acid-catalysed fabrication of nanoporous 1,3,5-triazine frameworks with efficient and selective CO2 uptake. Polym. Chem., 2014, 5: 3424
[13] Shaofei Wu, Yao Liu, Guipeng Yu*, Jianguo Guan, Chunyue Pan*, Yong Du, Xiang Xiong, Zhonggang Wa. Facile preparation of dibenzoheterocycle-functional nanoporous polymeric networks with high gas uptake capacities. Macromolecules, 2014, 47: 2875
[14] Haijun Tan, Chunyue Pan*, Gang Wang, Yingping Zou, Guipeng Yu*, Min Zhang*. A comparative study on properties of two phenoxazine-based dyes for dye-sensitized solar cells. Dyes and Pigments, 2014, 101: 67